代表性项目
(1)国家重点研发计划“变革性技术关键科学问题”重点专项课题子项目,2020YFA0710002,光电催化合成氨高时空分辨原位表征技术研究,2020.12-2025.11,200万,主持。
(2)皇家永利国际科技创新合作项目,2021YFH0055,基于时间分辨超快光谱的光催化材料活性增强机制研究,2021.04-2023.03,20万,主持。
(3)成都市国际科技合作项目,2021-GH02-00052-HZ,光伏耦合的“绿色”光电合成氨装置及关键技术开发,2020.03-2022.12,20万,主持。
(4)西南石油大学“启航计划”项目,2021QHZ028,基于超快光谱的氮气-水光电催化合成氨反应机理研究,10万,主持。
代表性论文
(1)Zhang F.; Liu Y.; Wei S.; Chen J.; Zhou Y.; He R.; Pullerits T.; Zheng K. Microscopic Morphology Independence in Linear Absorption Cross-Section of CsPbBr3 Nanocrystals. Science China Materials 2021, 64, 1418-1426.
(2)Zhang F., Chen J., Zhou Y., He R., Zheng K. Effect of Synthesis Methods on Photoluminescent Properties for CsPbBr3 Nanocrystals: Hot Injection Method and Conversion Method. Journal of Luminescence 2020, 220, 117023.
(3)Zhang, F.; Yang, B.; Zheng, K.; Yang, S.; Li, Y.; Deng, W.; He, R. Formamidinium Lead Bromide (FAPbBr3) Perovskite Microcrystals for Sensitive and Fast Photodetectors. Nano-Micro Letters 2018, 10 (3), 43.
(4)An R.O, Zhang F.O, Zou X., Tang Y., Liang M., Oshchapovskyy I., Liu Y., Honarfar A., Zhong Y., Li C., Geng H., Chen J., Canton S., Pullerits T., Zheng K. Photostability and Photodegradation Processes in Colloidal CsPbI3 Perovskite Quantum Dots. ACS Applied Materials & Interfaces 2018, 10, 39222-39227. (O共同一作)
(5)Zhang, F.; Yang, B.; Mao, X.; Yang, R.; Jiang, L.; Li, Y.; Xiong, J.; Yang, Y.; He, R.; Deng, W. Perovskite CH3NH3PbI3–xBrx Single Crystals with Charge-Carrier Lifetimes Exceeding 260 μs. ACS Applied Materials & Interfaces 2017, 9 (17), 14827-14832.
(6)Zhang, F.; Yang, B.; Li, Y.; Deng, W.; He, R. Extra Long Electron–Hole Diffusion Lengths in CH3NH3PbI3?-xClx Perovskite Single Crystals. Journal of Materials Chemistry C 2017, 5 (33), 8431-8435.
(7)Yang, B.; Zhang, F.; Chen, J.; Yang, S.; Xia, X.; Pullerits, T.; Deng, W.; Han, K. Ultrasensitive and Fast All-Inorganic Perovskite-Based Photodetector via Fast Carrier Diffusion. Advanced Materials 2017, 29 (40), 1703758.
(8)Zhang, F.; Xu, Y.; Zhang, W.; Shen, W.; Li, M.; He, R. Theoretical Studies of Photodeactivation Pathways of NHC-Chelate Pt (II) Compounds with Different Numbers of Triarylboron Units: Radiative and Nonradiative Decay Processes. The Journal of Physical Chemistry A 2017, 121 (3), 690-698.
(9)Zhang, F.; Yu, P.; Xu, Y.; Shen, W.; Li, M.; He, R. Theoretical Investigation of Regeneration Mechanism of the Metal-Free Sensitizer in Dye Sensitized Solar Cells. Dyes and Pigments 2016, 124, 156-164.
(10)Zhang, F.; Yu, P.; Shen, W.; Li, M.; He, R. Effect of “push–pull” Sensitizers with Modified Conjugation Bridges on the Performance of P-Type Dye-Sensitized Solar Cells. RSC Advances 2015, 5 (79), 64378-64386. |